Our panels include over 3,000 genes selected based on curated gene reviews, variant databases (HGMD and ClinVar), most recent literature, and customer requests. We offer enhanced clinical utility, maximized diagnostic yield, empowered differential diagnosis as well as analytically validated up-to-date genes across all our panels. Difficult-to-sequence genes are covered with high quality enabling true diagnostic impact in challenging patient cases.
Inherited skeletal diseases are difficult to subtype and classify into categories. The design and gene selection of our skeletal disease panels follows Mortier et al. (Nosology and Classification of Genetic Skeletal Disorders: 2019 Revision; PMID: 31633310).
In addition to many disorder-specific panels, larger disease groups are also targeted. Specifically, our Macrocephaly/Overgrowth Syndrome Panel and Microcephaly and Pontocerebellar Hypoplasia Panel are suitable for patients with abnormalities in skull structure and symptoms that substantially overlap with neurological diseases. Similarly, our Neuronal Migration Disorder Panel covers a broader set of genes related to holoprosencephaly, lissencephaly, and polymicrogyria.
What genetic diagnostics can offer patients with hereditary malformations
Genetic diagnostics is the most efficient way to subtype these diseases and provide the necessary information to make confident individualized treatment and management decisions. Moreover, identifying the causative mutation establishes the mode of inheritance within the family, which is essential for well-informed genetic counseling. Additionally, genetic diagnosis can help in family planning.
Summary Multigenic and intragenic copy number variation (CNV) are expected to contribute to the molecular etiology of inherited bone marrow failure syndromes (IBMFS). To determine the efficacy of a broad next-generation sequencing (NGS) panel test including robust CNV analysis, we conducted a retrospective review of 495 test reports from patients…
Summary Hereditary spastic paraplegia (HSP) is a heterogenous condition characterized by lower extremity weakness and spasticity. For many patients, the genetic etiology remains undetermined, and few studies have evaluated the yield of broad genetic testing in a large cohort of patients presenting with HSP. In a retrospective review of 533…
Summary Pulmonary arterial hypertension (PAH) is a rare condition that increases pressure in the lungs and can lead to heart failure. Genetic testing can help identify the underlying cause, guide family screening, and inform reproductive decision-making. While previous studies in selected patient groups report a diagnostic yield of 10–30%, less…
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